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Network Calculus在机载雷达设计中的应用

Application of Network Calculus in the Airborne Radar Design
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摘要 Network Calculus是一种基于最小加代数理论来分析网络数据流的方法,它已被广泛应用于工业、航空和航天的复杂网络设计中。机载雷达要求系统具有高实时性,尤其对嵌入式任务的调度有严格的时序要求。在机载雷达的设计中应用此理论,可以在系统前期设计时提供实时性的理论依据和保障,为雷达系统的实时性设计提供了一种方法和手段。 Network Calculus is an approach for analyzing the network data flow based on rain-plus algebra theory, and it has been already widely used in the network analysis of industry, aviation and aerospace domains. Nowadays, it is highly required for the performance of real time in the airborne radar system. Especially, scheduling of the tasks in embedded systems is extremely critical. The real time problem is guaranteed in terms of network when applying this theory into the design of the airborne radar system. An appropriate method for designing the real time system is provided.
出处 《测控技术》 CSCD 北大核心 2012年第5期128-130,143,共4页 Measurement & Control Technology
关键词 NETWORK CALCULUS 数据流 机载雷达 嵌入式 实时性 Network Calculus data flow airborne radar embedded systems real time
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参考文献6

  • 1ARINC664, Aircraft data network( part 7) :deterministic net- works [ S ]. 2005.
  • 2高文宇,陈松乔,王建新.网络微积分学研究[J].微电子学与计算机,2004,21(11):76-80. 被引量:10
  • 3Sariowan H. A service-curve approach to performance guar- antees in integrated-service networks [ D ]. University of Cali- fornia, San Diego, 1996.
  • 4Cruz R L. Quality of service guarantees in virtual circuit switched networks [ J ]. IEEE Journal of Selected Areas in Communications, 1995,13 (6) : 1048 - 1056.
  • 5Parekh A K, Gallager R G. A generalized processor sharing approach to flow control in integrated services networks: the single-node case [ J ]. IEEE/ACM Transactions on Networ- king, 1993,1 ( 3 ) : 344 - 357.
  • 6张奇智,张彬,张卫东.基于网络演算计算交换式工业以太网中的最大时延[J].控制与决策,2005,20(1):117-120. 被引量:44

二级参考文献29

  • 1Boudec J L,Thiran P. Network Calculus: A Theory of Deterministic Queuing Systems for the Internet[M].Berlin : Springer-Verlag, 2002.
  • 2Watson K S. Network calculus in star and line networks with centralized communication[R].Karlsruhe:Fraunhofer IITB, 2002.
  • 3Georges J P, Divoux T, Rondeau E. Comparison of switched Ethernet architectures models[A]. 9th IEEE Int Conf on Emerging Technologies and Factory Automation[C]. Portugal, 2003: 375-382.
  • 4Boudec J Y L, Thiran P. A short tutorial on network calculus I: Fundamental bounds in communication networks[A]. Proc of IEEE Int Symposium on Circuits and Systems[C]. Geneva, 2000 : 93-96.
  • 5Boudec J Y L,Thiran P,Giordano S. A short tutorial on network calculus Ⅱ:Min-plus system theory applied to communication networks[A]. Proc of IEEE Int Symposium on Circuits and Systems[C]. Geneva, 2000:97-100.
  • 6Wang Z,Song Y,Chen J,et al.Real-time characteristics of Ethernet and its improvement[A].Proc of the 4th World Congress on Intelligent Control and Automation[C]. Shanghai, 2002 : 1311-1318.
  • 7Georges J P, Rondeau E, Divoux T. Evaluation of switched Ethernet in an industrial context by using the network calculus[A]. 4th IEEE Int Workshop on Factory Communication Systems[C]. Sweden, 2002 : 19-26.
  • 8R L Cruz. A calculus for network delay, part I: Network elements in isolation. IEEE Transactions on information theory. 1991,37:114-131.
  • 9R L Cruz. A calculus for network delay, part Ⅱ: Network analysis. IEEE Transactions on information theory. 1991,37:132-141.
  • 10C S Chang. Stability, queue length and delay, Part I: deterministic queuing networks. Tech. Rep. Technical Report RC 17708, IBM, 1992.

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